标题: 次波长光栅波导结构之研究
Investigation of Subwavelength Grating (SWG) Waveguide Structures
作者: 张超然
Chang, Chao-Jan
陈琼华
Chen, Chyong-Hua
光电工程研究所
关键字: 次波长光栅;次波长光栅波导;锥形次波长光栅波导;次波长光栅环形共振腔;转换矩阵法;模态解析器;subwavelength grating (SWG);subwavelength grating waveguide (SWG waveguide);tapered subwavelength grating waveguide (Tapered SWG waveguide);subwavelength grating ring resonator (SWG ring resonator);transfer matrix method (TMM);mode solver
公开日期: 2014
摘要:   在本篇论文中,我们提出一个适用于直线和弯曲波导中有效率又准确的三维次波长光栅波导模态解析器,其运作原理如下所述。基于次波长光栅波导拥有结构近似线性的色散关系,我们使用转换矩阵法得到其等效均匀介质折射率,因此三维次波长光栅波导将可视为一均匀三维波导结构,接着再使用有限元素法计算各种此三维次波长光栅波导的模态分布及相关特性。为了验证我们模态解析器的准确度,我们探讨多种不同几何结构上的直线和弯曲次波长光栅波导,并且透过重叠积分与三维有限时域差分法所解出的模态之间来作比较。其比较结果显示,我们模态解析器所获得的模态分布与三维有限时域差分法所解出的模态具有高达96%之重叠积分值,显示我们所发展之模态解析器具有高准确度。因此,我们将此模态解析器应用至锥形波导及环形共振腔设计。在锥形波导设计中,我们提出渐变填充因子方式来设计锥形波导来设计于两种三维次波长光栅波导
,藉以改变在三维次波长光栅锥形波导中的等效介质折射率和模态。模拟结果显示此设计可以获得长度大于2 m以上的锥形波导长度其损耗会低于0.14 dB。另一方面,我们提出半径3 m的PSWG环形共振腔,透过模态解析器所计算的模态等效折射率值可推算出此设计之共振波长值及自由光谱范围,且模拟结果显示此PSWG环形共振腔之消光比为25.72 dB、品质因子为1062.3、半高宽为1.45 nm且其自由光谱范围为 33nm。
We propose an efficient and accurate mode solver for three dimensional subwavelength grating (3D SWG) waveguides with straight and bend structures. Based on the approximated linear dispersion relation of the SWG structures, we utilize the transfer matrix method (TMM) to obtain the equivalent effective index of a SWG structure, and then a 3D SWG waveguide is equivalent to the conventional 3D waveguide. At last, we use the finite element method (FEM) to realize the modal distributions and related properties of this SWG waveguide. To confirm our mode solver, we investigate several straight and bent SWG waveguides with different geometric parameters and compare to the modes calculated by 3D finite difference time domain (FDTD) method by using the overlap integral. We observe the values of overlap integrals are larger than 96 %, showing that our mode solver is highly accurate. Besides, we apply this mode solver to design tapered waveguides and ring resonators. We propose two SWG tapered waveguides by varying the filling factors along the structures. Then the effective medium indices along the structures are varied and thus the mode is converted along the SWG tapered waveguides. The simulated results show that the taper with its length larger than 2 m has its taper loss of less than 0.14 dB. On the other hand, we use the obtained effective indices of a partial SWG bending structure with a radius of 3 m to calculate the resonant wavelengths and the free spectral range (FSR) of the corresponding PSWG ring resonator. The FDTD simulated results show this PSWG ring resonator has extinction ratio of 25.72 dB, quality factor (Q factor) of 1062.3, FWHM of 1.45 nm and FSR of 33 nm.
URI: http://140.113.39.130/cdrfb3/record/nctu/#GT070150530
http://hdl.handle.net/11536/76448
显示于类别:Thesis